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Shaping the drivers' interaction: how the new vehicle systems match the technological requirements and the human needs

机译:塑造驾驶员之间的互动:新的车辆系统如何满足技术要求和人类需求

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Although it is not always possible to derive from statistics the causes of an accident, data clearly show that they are mostly due to a lack of driver's perception, with high direct and indirect social costs for society (Hutchinson in Road accidents statistics, Rumsby Scientific Publishing, 1987; Kawai in Convergence 1994, Conference Proceedings, 1994; Boussuge in Bilan et perspectives, Revue Gen. des Routes et des Aerodromes, N. 726, 1995). Therefore, a strong integration among all the actors involved (i.e., the drivers, the vehicle or technical system in general and the driving environment) is quite necessary. From the beginning of 1980s, there has been a shift in system concept design, moving from a technological approach towards a human-centred design approach (Norman and Draper 1986; Rouse 1991). Firstly this approach was applied to the human-computer interaction domain, and has also been extended towards complex and automated technological systems (Sheridan in Telerobotics, automation, and human supervisory control, MIT Press, 1992; Scerbo in Human performance in automated systems: theory and applications, Lawrence Erlbaum Associates, 1996) in several domains as, among the others, automotive (Michon in Generic intelligent driver support, Taylor & Francis, 1994) and industrial plants (Caccia-bue in Giuseppe mantovani ergonomia, II Mulino, 2000). According to these perspectives, the role of user's needs in the design process of a certain system becomes crucial; nevertheless, the technological requirements, i.e., the so-called "machine needs" should maintain a role of which the designer should be totally aware. Otherwise, the risk is to fail the design process making a system incoherent and ineffective. Thus, this paper aims at presenting such types of needs, the mutual interaction between machine and users, as well as the interaction of both with the surrounding environment. The work is based on several experiences conducted in the automotive domain.
机译:尽管并非总是能够从统计数据中得出事故原因,但数据清楚地表明,事故原因主要是由于缺乏驾驶员的感知,对社会造成了直接和间接的高社会成本(Hutchinson,《道路事故统计》,拉姆斯科学出版社, ,1987; Kawai在Convergence 1994中,会议论文集,1994; Boussuge在Bilan等人的观点中,Revue Gen.des Routes等人Aerodromes,N.726,1995)。因此,在所有参与者之间(即驾驶员,一般车辆或技术系统以及驾驶环境)进行强有力的整合是非常必要的。从1980年代初开始,系统概念设计发生了转变,从技术方法转向以人为本的设计方法(Norman和Draper 1986; Rouse 1991)。首先,这种方法被应用于人机交互领域,并且还扩展到了复杂的自动化技术系统(Sheridan,Telerobotics,自动化和人类监督控制,麻省理工学院出版社,1992年; Scerbo:《自动化系统中的人类绩效:理论》)。的应用和应用,Lawrence Erlbaum Associates,1996)涉及多个领域,其中包括汽车领域(Michon,通用智能驾驶支持,Taylor&Francis,1994)和工业工厂(Caccia-bue,朱塞佩·曼托瓦尼人体工程学,II Mulino,2000) 。根据这些观点,用户需求在特定系统的设计过程中的作用变得至关重要。但是,技术要求,即所谓的“机器需求”应保持设计者应完全意识到的作用。否则,风险是使设计过程失败,使系统不连贯且无效。因此,本文旨在介绍此类需求类型,机器与用户之间的相互交互以及两者与周围环境的交互。这项工作是基于在汽车领域的一些经验。

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